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首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Tomographic retrieval of cloud liquid water fields from a single scanning microwave radiometer aboard a moving platform – Part 1: Field trial results from the Wakasa Bay experiment
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Tomographic retrieval of cloud liquid water fields from a single scanning microwave radiometer aboard a moving platform – Part 1: Field trial results from the Wakasa Bay experiment

机译:从单次扫描微波辐射计的云液体水域断层切断检索船只移动平台 - 第1部分:Wakasa Bay实验的现场试验结果

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Tomographic methods offer great potential for retrieving three-dimensional spatial distributions of cloud liquid water from radiometric observations by passive microwave sensors. Fixed tomographic systems require multiple radiometers, while mobile systems can use just a single radiometer. Part 1 (this paper) examines the results from a limited cloud tomography trial with a single-radiometer airborne system carried out as part of the 2003 AMSR-E validation campaign over Wakasa Bay of the Sea of Japan. During this trial, the Polarimetric Scanning Radiometer (PSR) and Microwave Imaging Radiometer (MIR) aboard the NASA P-3 research aircraft provided a useful dataset for testing the cloud tomography method over a system of low-level clouds. We do tomographic retrievals with a constrained inversion algorithm using three configurations: PSR, MIR, and combined PSR and MIR data. The liquid water paths from the PSR retrieval are consistent with those from the MIR retrieval. The retrieved cloud field based on the combined data appears to be physically plausible and consistent with the cloud image obtained by a cloud radar. We find that some vertically-uniform clouds appear at high altitudes in the retrieved field where the radar shows clear sky. This is likely due to the sub-optimal data collection strategy. This sets the stage for Part 2 of this study that aims to define optimal data collection strategies using observation system simulation experiments.
机译:断层扫描方法为通过被动微波传感器检索云液体水的三维空间分布提供了极大的潜力。固定断层系统需要多个辐射仪,而移动系统只能使用单个辐射计。第1部分(本文)通过作为2003年AMSR-E验证活动的一部分,将有限云断层摄影试验从日本瓦卡萨湾的Wakasa湾的2003年AMSR-E验证活动的一部分进行了一部分。在此试验期间,偏振扫描辐射计(PSR)和微波成像辐射计(MIR)乘坐NASA P-3研究飞机提供了一个有用的数据集,用于测试云断层扫描方法在低级云系统上。我们使用三种配置具有约束的反转算法进行断层扫描检索:PSR,MIR和组合PSR和MIR数据。来自PSR检索的液体水路与来自MIR检索的液体水路径一致。基于组合数据的检索到的云场似乎是物理上可粘的并且与由云雷达获得的云图像一致。我们发现一些垂直均匀的云在雷达显示出清晰的天空中的检索到的田地中出现高海拔。这可能是由于子最优数据收集策略。这为本研究第2部分设定了旨在使用观察系统仿真实验定义最佳数据收集策略的阶段。

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